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3D-printed splint for mallet finger injury
A A
B B
C
C
D
D
Figure 9. Stress simulation results of Figure 10. Deflection simulation results of
topology-optimized (A) 62.51% mass, (B) 71.13% topology-optimized (A) 62.51% mass, (B) 71.13%
mass, (C) 79.49% mass, and (D) original mass, (C) 79.49% mass, and (D) original
three-dimensional-printed 100% mass, splints. three-dimensional-printed 100% mass, splints.
24 International Journal of Bioprinting (2020)–Volume 6, Issue 2

